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    • 21. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US06891586B2
    • 2005-05-10
    • US10002134
    • 2001-12-05
    • Kouichi AnnoTohru Sasaki
    • Kouichi AnnoTohru Sasaki
    • G02F1/1333G02F1/1335G02F1/1343G02F1/136G02F1/1368G09F9/30
    • G02F1/133553
    • To respective pixel regions formed on a liquid-crystal side of one of a pair of substrates which are arranged to face each other in an opposed manner while sandwiching liquid crystal therebetween, pixel electrodes which reflect an external light incident on the pixel electrodes through the other substrate are provided. Protruding portions are formed on a surface of the pixel electrode in a scattered manner and the protruding portions have two or more kinds of shapes which are different from each other when the pixel electrodes are viewed in a plan view. The protruding portions formed on the surface of the pixel electrode are formed of island-like multi-layered material layers which are positioned at lower layer sides of the pixel electrodes. Due to such a constitution, the generation of the interference light can be suppressed.
    • 对于形成在一对基板中的一个基板的液晶侧的各个像素区域,它们以相对的方式彼此相对地配置,同时夹着液晶,将通过另一个入射到像素电极的外部光反射的像素电极 衬底。 在像素电极的表面上以分散的方式形成突出部分,并且当在俯视图中观察像素电极时,突出部分具有彼此不同的两种或更多种形状。 形成在像素电极的表面上的突出部分由位于像素电极的下层侧的岛状多层材料层形成。 由于这样的结构,能够抑制干涉光的产生。
    • 25. 发明授权
    • Electrostatic capacity touch panel having a plurality of first, second and third electrodes
    • 具有多个第一,第二和第三电极的静电容量触摸面板
    • US08537125B2
    • 2013-09-17
    • US12496826
    • 2009-07-02
    • Norio MambaTsutomu FuruhashiKouichi Anno
    • Norio MambaTsutomu FuruhashiKouichi Anno
    • G06F3/041G06F3/045G06F3/044
    • G06F3/044
    • A display device having an electrostatic capacity touch panel includes: X electrodes XP and Y electrodes YP which intersect each other via a first insulating layer; and a plurality of Z electrodes disposed in a floating state via a second insulating layer. For the second insulating layer, a material such as an elastic insulating material which changes in thickness by pressing of touch is used. The Z electrode is disposed so as to overlap both one of the X electrodes and one of the Y electrodes. A pad part of the X electrode has a largest area in the vicinity of a thin line part of the X electrode, and a smallest area in the vicinity of the thin line part of the adjacent X electrode. An area of the pad part is reduced as the pad part departs from the thin line part of the X electrode.
    • 具有静电电容触摸面板的显示装置具有经由第一绝缘层相交的X电极XP,Y电极YP, 以及经由第二绝缘层以浮置状态设置的多个Z电极。 对于第二绝缘层,使用通过按压触摸而改变厚度的诸如弹性绝缘材料的材料。 Z电极配置成与X电极和Y电极中的一个重叠。 X电极的焊盘部分在X电极的细线部分附近具有最大面积,并且在相邻X电极的细线部分附近具有最小的面积。 当焊盘部分离开X电极的细线部分时,焊盘部分的区域减小。
    • 27. 发明申请
    • Display device
    • 显示设备
    • US20090079889A1
    • 2009-03-26
    • US12292331
    • 2008-11-17
    • Hitoshi KomenoKouichi Anno
    • Hitoshi KomenoKouichi Anno
    • G02F1/1343
    • G02F1/136286G02F1/1345G02F1/136213G02F2001/13456
    • Even when gate lines are pulled around at both left and right picture frame regions, it is possible to prevent a gate wiring pattern which is constituted of the gate lines and gate-line pull-around lines and a storage wiring pattern which is constituted of storage lines and a common line which connects storage lines each other from getting over each other. The gate lines GL1, GL2 are pulled around by the gate-line pull-around lines GLL1, GLL2 in both left and right picture frame regions. The common lines B2, B3 which connect the storage lines STL each other are formed at both left and right picture frame regions. Further, the gate wiring pattern which is constituted of the gate lines GL1, GL2 and the gate-line pull-around lines GLL1, GLL2 and the storage wiring pattern which is constituted of the storage lines STL and the common lines B2, B3 do not cross each other.
    • 即使在左右相框区域上拉拽栅极线的情况下,也可以防止由栅极线和栅极线绕入线构成的栅极布线图案和由存储器构成的存储配线图案 线路和一条共同的线路,将存储线路彼此相互连接。 栅极线GL1,GL2被左右图像帧区域中的栅极线绕线GLL1,GLL2拉动。 将存储线STL彼此连接的公共线B2,B3形成在左右相框区域。 此外,由栅极线GL1,GL2和栅极线绕线GLL1,GLL2构成的栅极布线图案和由存储线STL和公共线B2,B3构成的存储布线图案不是 互相交叉
    • 28. 发明授权
    • Display device
    • 显示设备
    • US07342626B2
    • 2008-03-11
    • US11495634
    • 2006-07-31
    • Kouichi AnnoHitoshi KomenoTomonori Nishino
    • Kouichi AnnoHitoshi KomenoTomonori Nishino
    • G02F1/136G02F1/1333
    • G02F1/133512G02F1/133371G02F2203/09
    • The present invention prevents a frame-like luminance difference generated in a portion which surrounds a light transmissive region. In a pixel region formed on a substrate, a first pixel electrode formed of a light transmissive conductive layer is formed in one light transmissive region which is formed by partitioning the pixel region and a second pixel electrode formed of a non-light transmissive conductive film is formed on the other light reflective region. The first pixel electrode is positioned as a lower layer with respect to an insulation film. A hole is formed in the insulation film in a region corresponding to the light transmissive region so as to expose the first pixel electrode. The second pixel electrode is formed on a light reflective region of the insulation film. Light shielding is performed at a portion corresponding to a side wall surface of the hole formed in the insulation film.
    • 本发明防止在透光区域周围部分产生的帧状亮度差。 在形成在基板上的像素区域中,由透光导电层形成的第一像素电极形成在通过划分像素区域形成的一个透光区域中,并且由非透光性导电膜形成的第二像素电极为 形成在另一个光反射区域上。 第一像素电极被定位为相对于绝缘膜的下层。 在与透光区域对应的区域中的绝缘膜上形成孔,以露出第一像素电极。 第二像素电极形成在绝缘膜的光反射区域上。 在对应于形成在绝缘膜上的孔的侧壁表面的部分进行遮光。
    • 29. 发明授权
    • Liquid crystal display device and partial transmission type liquid crystal display device
    • 液晶显示装置和部分透射型液晶显示装置
    • US07259817B2
    • 2007-08-21
    • US10485078
    • 2002-08-02
    • Osamu ItouHiroko HayataKouichi AnnoShinichi Komura
    • Osamu ItouHiroko HayataKouichi AnnoShinichi Komura
    • G02F1/1335
    • G02F1/13363G02F1/133371G02F1/133555G02F1/133634G02F1/1396G02F2001/133637G02F2001/1398G02F2413/02G02F2413/08
    • The present invention is configured so that it has a first substrate, a second substrate, a liquid crystal layer pinched between the first substrate and second substrate, and a driving unit, wherein a characteristic of a reflectivity versus an applied voltage is a normally closed type and a characteristic of a transmissivity versus an applied voltage is the normally closed type: wherein the first substrate has a common electrode, and an upside polarization plate and upside phase plate on an upper surface; wherein the second substrate has a reflective electrode and transparent electrode connected with an active element, and a downside polarization plate and downside phase plate on a lower surface; wherein the liquid crystal layer has a twist angle not less than 40 degrees and not more than 65 degrees; wherein a retardation of the liquid crystal layer in a reflective display unit is within a range of not less than 230 nm and not more than 300 nm; and wherein a retardation of the liquid crystal layer in a transmissive display unit is larger than the retardation of the liquid crystal layer in the reflective display unit. Thus, is obtained a display that is more luminous and wider in a light reproduction range under a wide range of luminous environments ranging from a dark place to direct sunlight.
    • 本发明被配置为具有第一基板,第二基板,夹在第一基板和第二基板之间的液晶层和驱动单元,其中反射率与施加电压的特性是常闭型 并且透射率相对于施加电压的特性是常闭型:其中第一衬底具有公共电极,在上表面上具有上侧偏振板和上侧相位板; 其中所述第二基板具有反射电极和与有源元件连接的透明电极,以及在下表面上的下侧偏振板和下侧相位板; 其中所述液晶层具有不小于40度且不大于65度的扭转角; 其中反射显示单元中的液晶层的延迟在不小于230nm且不大于300nm的范围内; 并且其中透射显示单元中的液晶层的延迟大于反射显示单元中的液晶层的延迟。 因此,在从黑暗的地方到阳光直射的各种发光环境的范围内,获得在光再现范围内更加发光和更宽的显示。
    • 30. 发明授权
    • Display device
    • 显示设备
    • US07164453B2
    • 2007-01-16
    • US11154566
    • 2005-06-17
    • Hitoshi KomenoKouichi Anno
    • Hitoshi KomenoKouichi Anno
    • G02F1/1343
    • G02F1/136286G02F1/1345G02F1/136213G02F2001/13456
    • Even when gate lines are pulled around at both left and right picture frame regions, it is possible to prevent a gate wiring pattern which is constituted of the gate lines and gate-line pull-around lines and a storage wiring pattern which is constituted of storage lines and a common line which connects storage lines each other from getting over each other. The gate lines GL1, GL2 are pulled around by the gate-line pull-around lines GLL1, GLL2 in both left and right picture frame regions. The common lines B2, B3 which connect the storage lines STL each other are formed at both left and right picture frame regions. Further, the gate wiring pattern which is constituted of the gate lines GL1, GL2 and the gate-line pull-around lines GLL1, GLL2 and the storage wiring pattern which is constituted of the storage lines STL and the common lines B2, B3 do not cross each other.
    • 即使在左右相框区域上拉拽栅极线的情况下,也可以防止由栅极线和栅极线绕入线构成的栅极布线图案和由存储器构成的存储配线图案 线路和一条共同的线路,将存储线路彼此相互连接。 栅极线GL 1,GL 2被左右图像帧区域中的栅极线绕线GLL 1,GLL 2拉动。 在左右相框区域上形成有连接存储线STL的公共线B 2,B 3。 此外,由栅极线GL1,GL2和栅极线绕线GLL 1,GLL 2构成的栅极布线图案和由存储线STL和公共线B构成的存储布线图案 2,B 3不要交叉。